热生理体模型在CFD中的集成

G. Pichurov, P. Stankov
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引用次数: 5

摘要

将人体热生理系统的双节点数学模型集成到室内气流的计算流体动力学(CFD)模拟中。模型使用CFD的温度输入来评估来自体表的干热通量和潜热通量,并将其作为边界条件输出。这是一个迭代过程,并通过潜热通量的欠松弛来保证收敛。该模型还考虑了服装的干性和潜热性。将人体热损失和气流的数值预测与气候室中的物理测量结果进行比较。当使用低雷诺数湍流模型时,观察到很好的一致性。集成模拟在广泛的条件下表现良好,预测身体核心和皮肤温度,血液流动,皮肤机智,以及身体释放到房间的热量和水分的转移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of thermophysiological body model in CFD
A two-node mathematical model of the human thermophysiological system has been integrated into a Computational Fluid Dynamic (CFD) simulation of the airflow in a room. Temperature inputs from the CFD are used by the model to evaluate the dry and latent heat flux from the body surface and output them as boundary conditions. This is an iterative process and convergence is ensured by under-relaxation of the latent heat flux. The model also considers the dry and latent heat resistance of clothing. Numerical predictions of the body heat loss and airflow are compared against physical measurements in a climate chamber. Good agreement was observed when using the low Reynolds number turbulence model. The integrated simulation performs well under wide set of conditions, predicting body core and skin temperature, blood flow, skin wittedness, as well as the transfer of heat and moisture released by the body into the room.
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